22.
P Miller and X-J Wang,
Chaos 16:026109 (2006).
21.
P Miller and X-J Wang,
PNAS 103:201-206 (2006).
20.
P Miller and X-J Wang,
Journal of Neurophysiology 95:1099-1114 (2006).
19.
P Miller,
Neural Computation 18:1268-1317 (2006).
18.
P Miller, A M Zhabotinsky, J E Lisman and X-J Wang,
PLoS Biology 3:e107 (2005).
17.
P Miller, C D Brody, R Romo and X-J Wang,
Cerebral Cortex 13 1208-1218 (2003).
16. Temperature dependence of Superconductor-Correlated Metal-Superconductor Josephson junctions.
J K Freericks, B K Nikolic and P Miller,
Appl. Phys. Lett. 82 970-972 (2003).
Erratum Appl. Phys. Lett. 83, 1275 (2003).
15. Optimizing the speed of a Josephson junction with dynamical
mean-field theory.
J K Freericks, B K Nikolic and P Miller,
J. Mod. Phys. B 16 531-561 (2002).
14.
B K Nikolic, J K Freericks and P Miller,
Phys. Rev. Lett.88, 077002-1-4 (2002).
13. Equilibrium properties of double-screened-dipole-barrier SINIS
Josephson junctions.
B K Nikolic, J K Freericks and P Miller,
Phys. Rev. B 65, 064529-1-11 (2002).
12. Reduction of Josephson critical current in
short ballistic SNS weak links.
B K Nikolic, J K Freericks,and P Miller,
Phys. Rev. B 64 212507-1-4 (2001).
11. Tuning a Josephson junction through a quantum critical point.
J K Freericks, B K Nikolic and P Miller,
Phys. Rev. B 64 054511 (2001); Erratum: Phys. Rev. B 68, 099901 (2003).
10.
P Miller and J K Freericks,
Journal of Physics : Condensed Matter 13 3187-3213 (2001).
9.
J K Freericks and P Miller, Phys. Rev. B 62 10022-10032 (2000).
8.
P Miller, J K Freericks and E J Nicol,
Phys. Rev. B 58 14498-14510 (1998).
7.
Theoretical investigations of the vortex lattice and de Haas - van Alphen
oscillations in the superconducting state.
P Miller and B L Gyorffy,
Journal of Physics : Condensed Matter 7 5579-5606 (1995).
6. A recursion method for solving the Bogoliubov equations for
inhomogeneous superconductors.
G Litak, P Miller and B L Gyorffy,
Physica C 251: 263-273 (1995).
5.
On the Coexistence of Superconductivity and Charge Density Waves.
P Miller , B L Gyorffy and B Janko,
Physica C 210: 343-351 (1993).
4. Substrate-temperature dependence of thin films of BiSrCaCuO
deposited by the laser ablation method.
P V Kolinsky, P May, M R Harrison, P Miller and D Jedamzik,
Superconductor Science & Technology 1: no.6, p. 333-5 (1989.)
3. Superconducting thin films of Bi-Sr-Ca-Cu-O deposited using
a 'free lasing' infrared Nd:YAG laser.
P V Kolinsky, P May, M R Harrison, P Miller, R J Chad and D Jedamzik,
Electronics Letters 24: no.19, p. 1204-5 (1988).
2. Superconducting thick films of BiSrCaCuO by two spin-on methods.
P May, W J O Boyle, M R Harrison, P Miller and D Jedamzik,
Superconductor Science & Technology 1: no.2 p. 71-4 (1988).
1. Production of superconducting thick films by a spin-on process.
P May, D Jedamzik, W J O Boyle and P Miller,
Superconductor Science & Technology 1: no.1, p. 1-4 (1988).